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The evolution of the flow topologies of 3D separations in the stator passage of an axial compressor stage

机译:轴向压缩机级定子通道中3D分离的流动拓扑的演变

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Flow separations in compressor blade passages are common and can cause significant flow blockage and losses production in some instances. Because of the measurement difficulties, most of the previous studies concerning the compressor 3D separations were conducted in cascades facilities. In this paper, 3D separation flows were studied in the stator of a low-speed compressor test facility. In order to find their evolutionary processes, oil flow visualizations were conducted at four compressor operating conditions from the design to near-stall conditions. The results showed that the corner separations appeared at even the design condition; however, they were so weak causing very slight flow blockage until the maximum static pressure rise condition arrived. By using topological analyses methods, exact 3D flow structures inside the stator passage were reconstructed and their flow mechanisms were analyzed. It was found that, as the mass flow rate decreased, the flow topologies of 3D separations became much more complex and the evolutionary processes of the 3D flows were significantly affected by both the flow-flow interactions inside the stator passage and the rotor-stator interactions between blade rows. However, the complicated 3D flow structures in the tested stator passage always consist with four basic types of flows: the corner vortex flow, the flow of the corner separation with/without the ring-like vortex, and the blade surface separation flow. Finally, the results obtained based on the topological analyses of the oil-flow visualization pictures were validated by using the measured results of stereoscopic particle image velocimetry.
机译:压缩机叶片通道中的气流分离很常见,在某些情况下会导致严重的气流阻塞和生产损失。由于测量困难,以前有关压缩机3D分离的大多数研究都是在叶栅设备中进行的。在本文中,研究了低速压缩机测试设备定子中的3D分离流。为了找到它们的演变过程,在从设计到接近失速的四个压缩机运行条件下进行了油流可视化。结果表明,即使在设计条件下,拐角间隔也出现。然而,它们是如此的脆弱以至于在达到最大静压上升条件之前,造成很小的流量阻塞。通过使用拓扑分析方法,重构了定子通道内部的精确3D流动结构,并分析了其流动机理。发现,随着质量流量的降低,3D分离的流动拓扑变得更加复杂,并且3D流动的演化过程受到定子通道内部的流-流相互作用和转子-定子相互作用的显着影响。在刀片行之间。但是,在测试的定子通道中,复杂的3D流动结构始终包含四种基本类型的流动:角涡流,带有/不带有环形涡流的角分离流以及叶片表面分离流。最后,使用立体粒子图像测速仪的测量结果验证了基于油流可视化图片的拓扑分析获得的结果。

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